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Feruloyl esterase (FAE-1) sourced from a termite hindgut and GH10 xylanases synergy improves degradation of arabinoxylan

机译:来自白蚁后肠和GH10木聚糖酶协同作用的Feruloyl酯酶(Fae-1)改善了阿拉伯氧基的降解

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Cereal feedstocks have high arabinoxylan content?as their main hemicellulose, which is linked to lignin by hydroxycinnamic acids such as ferulic acid. The ferulic acid is linked to arabinoxylan by ester bonds, and generally, the high substitution of ferulic acid leads to a loss of activity of xylanases?targeting the arabinoxylan. In the current study, a feruloyl esterase (FAE-1) from a termite hindgut bacteria was functionally characterised and used in synergy with xylanases during xylan hydrolysis. The FAE-1 displayed temperature and pH optima of 60?°C and 7.0, respectively. FAE-1 did not release reducing sugars from beechwood xylan (BWX), wheat arabinoxylan (WAX) and oat spelt xylan (OX), however, displayed high activity?of? 164.74 U/mg protein on p -nitrophenyl-acetate (pNPA). In contrast, the GH10 xylanases; Xyn10 and XT6, and a GH11 xylanase, Xyn2A, showed more than two-fold increased activity on xylan substrates with low sidechain substitutions; BWX and OX, compared to the highly branched substrate, WAX. Interestingly, the FAE-1 and GH10 xylanases (Xyn10D and XT6) displayed a degree of synergy (DS) that was higher than 1 in all enzyme loading combinations during WAX hydrolysis. The 75%XT6:25%FAE-1 synergistic enzyme combination?increased the release of reducing sugars by 1.34-fold from WAX compared to the control, while 25%Xyn10D:75%FAE-1 synergistic combination released about 2.1-fold of reducing sugars from WAX compared to controls. These findings suggest that FAE-1 can be used in concert with xylanases, particularly those from GH10, to efficiently degrade arabinoxylans contained in cereal feedstocks for various industrial settings such as in animal feeds and baking.
机译:谷物原料具有高阿拉伯氧基含量?作为它们的主要半纤维素,其通过羟基氨基酸如羟基丙酸与木质素连接。阿魏酸通过酯键与阿拉伯氧基链接,一般来说,阿魏酸的高取代导致木聚糖酶的活性丧失?靶向阿拉伯氧基。在目前的研究中,通过在木聚糖水解期间用木聚糖酶的协同作用,在碘酸铁后菌细菌中使用来自白蚁后肠细菌的Feruloyl酯酶(Fae-1)。 FAE-1显示温度和pH值分别为60°C和7.0。 Fae-1没有从Beechwood Xylan(BWX)中的还原糖,小麦阿拉伯毒蛇(蜡)和燕麦拼写的Xylan(牛)展示了高活动? 164.74 u / mg蛋白质对硝基苯基 - 乙酸乙酯(PNPA)。相比之下,GH10木聚糖酶; Xyn10和XT6,以及GH11木聚糖酶Xyn2a显示出在具有低侧侧级取代的木聚糖基材上增加了两倍以上的活性; BWX和牛,与高分支底物,蜡相比。有趣的是,FAE-1和GH10木聚糖酶(XYN10D和XT6)显示了在蜡水解期间所有酶加载组合高于1的协同增量(DS)。 75%XT6:25%Fae-1协同酶组合?与对照相比,从蜡的减少糖的释放增加1.34倍,而25%XYN10D:75%Fae-1协同组合释放约2.1倍与对照相比蜡的糖。这些发现表明Fae-1可以与木聚糖酶,特别是GH10的那些进行音乐会,以有效降解谷物原料中包含的各种工业环境中的阿拉伯毒物,例如动物饲料和烘焙。

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